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首页> 外文期刊>Journal of Modern Optics >Development and applications of multimillijoule soft X-ray lasers
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Development and applications of multimillijoule soft X-ray lasers

机译:毫焦耳软X射线激光器的开发和应用

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We review development of multimillijoule X-ray lasers and of applications of these new laboratory sources carried out recently at the PALS facility. A backbone of this development is the neon-like zinc laser providing saturated output at 21.2 nm, with up to 10 mJ of energy per pulse. This represents currently the most energetic soft X-ray laboratory source. Recent improvements in its operation include better control of the beam shape, and more complete understanding of the prepulse pumping. The laser at 21.2 nm has been employed for a number of application experiments reviewed in this paper. They include transmission measurements of intense soft X-ray radiation, studies of fundamental processes of soft X-ray ablation, ablation micropatterning, feasibility study of soft X-ray Thomson scattering from dense plasmas, visualization of nanometric transient perturbation of optical surfaces, measurements of ablation rates of foils heated by IR pulses, and studies of 2D plasma hydrodynamics in the regime of sequential illumination.
机译:我们回顾了多焦耳X射线激光器的开发以及最近在PALS设施中进行的这些新实验室资源的应用。这种发展的主干是像氖一样的锌激光,它在21.2 nm处提供饱和输出,每个脉冲能量高达10 mJ。这代表了目前最活跃的软X射线实验室源。其操作方面的最新改进包括更好地控制光束形状,以及更全面地了解预脉冲泵浦。本文回顾了21.2 nm的激光用于许多应用实验。它们包括强力软X射线辐射的透射率测量,软X射线烧蚀基本过程的研究,烧蚀微图案化,稠密等离子体对软X射线汤姆逊散射的可行性研究,光学表面纳米级瞬态扰动的可视化,红外脉冲加热的箔的烧蚀率,以及在顺序照射范围内二维等离子体流体动力学的研究。

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